JP2002505638A - Automatic device for reducing centrifugal force acting on curved vehicles - Google Patents
Automatic device for reducing centrifugal force acting on curved vehiclesInfo
- Publication number
- JP2002505638A JP2002505638A JP55271499A JP55271499A JP2002505638A JP 2002505638 A JP2002505638 A JP 2002505638A JP 55271499 A JP55271499 A JP 55271499A JP 55271499 A JP55271499 A JP 55271499A JP 2002505638 A JP2002505638 A JP 2002505638A
- Authority
- JP
- Japan
- Prior art keywords
- vehicle
- centrifugal force
- piston
- wheel
- shock absorber
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 230000000694 effects Effects 0.000 claims abstract description 11
- 239000006096 absorbing agent Substances 0.000 claims description 11
- 230000035939 shock Effects 0.000 claims description 10
- 239000012530 fluid Substances 0.000 claims description 9
- 239000000725 suspension Substances 0.000 claims description 5
- 239000000700 radioactive tracer Substances 0.000 claims description 4
- 230000008602 contraction Effects 0.000 claims description 2
- 238000006073 displacement reaction Methods 0.000 claims description 2
- 239000007788 liquid Substances 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 1
Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G7/00—Pivoted suspension arms; Accessories thereof
- B60G7/006—Attaching arms to sprung or unsprung part of vehicle, characterised by comprising attachment means controlled by an external actuator, e.g. a fluid or electrical motor
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G17/00—Resilient suspensions having means for adjusting the spring or vibration-damper characteristics, for regulating the distance between a supporting surface and a sprung part of vehicle or for locking suspension during use to meet varying vehicular or surface conditions, e.g. due to speed or load
- B60G17/015—Resilient suspensions having means for adjusting the spring or vibration-damper characteristics, for regulating the distance between a supporting surface and a sprung part of vehicle or for locking suspension during use to meet varying vehicular or surface conditions, e.g. due to speed or load the regulating means comprising electric or electronic elements
- B60G17/016—Resilient suspensions having means for adjusting the spring or vibration-damper characteristics, for regulating the distance between a supporting surface and a sprung part of vehicle or for locking suspension during use to meet varying vehicular or surface conditions, e.g. due to speed or load the regulating means comprising electric or electronic elements characterised by their responsiveness, when the vehicle is travelling, to specific motion, a specific condition, or driver input
- B60G17/0162—Resilient suspensions having means for adjusting the spring or vibration-damper characteristics, for regulating the distance between a supporting surface and a sprung part of vehicle or for locking suspension during use to meet varying vehicular or surface conditions, e.g. due to speed or load the regulating means comprising electric or electronic elements characterised by their responsiveness, when the vehicle is travelling, to specific motion, a specific condition, or driver input mainly during a motion involving steering operation, e.g. cornering, overtaking
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G21/00—Interconnection systems for two or more resiliently-suspended wheels, e.g. for stabilising a vehicle body with respect to acceleration, deceleration or centrifugal forces
- B60G21/007—Interconnection systems for two or more resiliently-suspended wheels, e.g. for stabilising a vehicle body with respect to acceleration, deceleration or centrifugal forces means for adjusting the wheel inclination
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G7/00—Pivoted suspension arms; Accessories thereof
- B60G7/001—Suspension arms, e.g. constructional features
- B60G7/003—Suspension arms, e.g. constructional features of adjustable length
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62D—MOTOR VEHICLES; TRAILERS
- B62D9/00—Steering deflectable wheels not otherwise provided for
- B62D9/02—Steering deflectable wheels not otherwise provided for combined with means for inwardly inclining vehicle body on bends
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2200/00—Indexing codes relating to suspension types
- B60G2200/10—Independent suspensions
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2200/00—Indexing codes relating to suspension types
- B60G2200/40—Indexing codes relating to the wheels in the suspensions
- B60G2200/422—Driving wheels or live axles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2200/00—Indexing codes relating to suspension types
- B60G2200/40—Indexing codes relating to the wheels in the suspensions
- B60G2200/46—Indexing codes relating to the wheels in the suspensions camber angle
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2200/00—Indexing codes relating to suspension types
- B60G2200/40—Indexing codes relating to the wheels in the suspensions
- B60G2200/462—Toe-in/out
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2202/00—Indexing codes relating to the type of spring, damper or actuator
- B60G2202/40—Type of actuator
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2202/00—Indexing codes relating to the type of spring, damper or actuator
- B60G2202/40—Type of actuator
- B60G2202/41—Fluid actuator
- B60G2202/413—Hydraulic actuator
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2204/00—Indexing codes related to suspensions per se or to auxiliary parts
- B60G2204/10—Mounting of suspension elements
- B60G2204/14—Mounting of suspension arms
- B60G2204/148—Mounting of suspension arms on the unsprung part of the vehicle, e.g. wheel knuckle or rigid axle
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2204/00—Indexing codes related to suspensions per se or to auxiliary parts
- B60G2204/62—Adjustable continuously, e.g. during driving
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2206/00—Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
- B60G2206/01—Constructional features of suspension elements, e.g. arms, dampers, springs
- B60G2206/10—Constructional features of arms
- B60G2206/11—Constructional features of arms the arm being a radius or track or torque or steering rod or stabiliser end link
- B60G2206/111—Constructional features of arms the arm being a radius or track or torque or steering rod or stabiliser end link of adjustable length
- B60G2206/1116—Actively adjustable during driving
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G2800/00—Indexing codes relating to the type of movement or to the condition of the vehicle and to the end result to be achieved by the control action
- B60G2800/24—Steering, cornering
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Transportation (AREA)
- Vehicle Body Suspensions (AREA)
- Bending Of Plates, Rods, And Pipes (AREA)
- Automatic Cycles, And Cycles In General (AREA)
Abstract
(57)【要約】 コーナリングに作用する遠心力の影響を低減し、直角に横滑りするのを制限するための電気水力式又は電空式の駆動機構を備えており、カーブに応じてその外側に車両プラットホームを持ち上げて両ホイールの軸を適当に傾斜させながら車両が放物線上にあるように軌道修正を決定する自動装置である。 (57) [Summary] Equipped with an electro-hydraulic or electro-pneumatic drive mechanism to reduce the effect of centrifugal force acting on cornering and to limit skidding at right angles, An automatic device that determines the trajectory correction so that the vehicle is on a parabola while lifting the vehicle platform and appropriately tilting the axes of both wheels.
Description
【発明の詳細な説明】 カーブ走行車両に作用する遠心力の低減化自動装置 本発明は、コーナリングに作用する遠心力効果を低減し、直角に横滑りするの を制限するための電気水力式又は電空式の駆動機構を備えた自動装置に関する。 オートバイレースなどにおいては、タイヤの摩擦領域に負荷される遠心力のう ちかなりの量を免れるために、運転手がカーブの内側に傾斜することにより車輪 を傾斜させることで、横滑りを解消することが知られている。 本発明の目的は、上記有効な動作条件を車両にも転用することにあり、今まで はフレームに対しホイールの案内部を常に固定していたが、上記問題を解決する ために、カーブの方向に応じて2つの態様で両ホイールを傾斜させるようにした ものである。 前述した目的は本発明の装置によって達成され、該装置は当該カーブに応じて その外側に車両プラットホームを持ち上げて両ホイールの軸を適当に傾斜させな がら、車両が放物線上にあるように軌道修正を決定する。 本発明に係る装置の利点は、次のことにある:カーブにおいて同一スピードで より高い安全性を得ることができること、及び/又は、競技場においてより速い スピードで各カーブに直面することができることにある。 以下に本発明が、実施例を示す添付図面にしたがって詳細に説明される。 図1は、車両Vの後部に据え付けられ、コーナーリング車両に作用する遠心力 効果を低減させるための自動装置を示す。 図2は、車両が左に曲がる際の装置の作動を示す。 図3は、本発明による装置の動作原理を示す概略ブロック図である。 添付図面は、カーブを走行する車両にかかる遠心力効果を低減させるための自 動装置を示し、主に以下の構成部分から成る: −内部に水平軸に沿って移動自在とされる球状釣合い重り3及び2つの復元ばね 5付き押さえ4が設けられるとともに両端部にそれぞれ圧力センサ6が連結され た、シリンダ本体2により構成した遠心力トレーサー1; −ホイール軸Rの傾度を決定する複数の移動ピストン7; −タンク9内に含まれる流体(液体又は気体)を液圧ショックアブソーバAに 導入して、上記車両プラットホームの持ち上げ量を決定するとともに上記ピスト ン7に導入して上記両ホイールRの傾斜度を決定する、ホイールRの傾斜用ポン プ8; −電子中央処理器Cに組み込まれ、上記トレーサー1、上記ポンプ8及び油圧調 節バルブ10によって受け取られた信号に基づいて管理可能とされ、上記ショッ クアブソーバA及びピストン7内の膨張流体を制御する、制御モジュール11。 以下に本発明の装置の作用が、上記各構成部分に関連付けて記述される: −車両Vがカーブを走行する瞬時点で、遠心力によって遠心力トレーサー1のシ リンダ本体2に収容される球状釣合い重り3が、車両の当該曲線軌道の外側に設 けられた上記押さえ4と接触することにより上記車両に惹起された遠心力に比例 する圧力が当該車両に印加され; −上記圧力は、上記釣合い重り3によって加圧される押さえと接続したセンサー 6によって読み取られ、上記圧力に関する情報が上記電子中央処理器Cに含まれ る制御モジュール11に伝送され、該制御モジュール11は、受け取った情報に 応じて、上記ポンプ8及び適当な油圧バルブ10を作動させ、上記タンク9内に 保持された膨張流体が油圧ショックアブサーバAに送られ、且つ、車両Vが曲が ろうとしているカーブの外側に位置する可動ピストン7に送られ; −ショックアブソーバAに導入された流体により該ショックアブソーバの伸縮量 及びそれに続いて読み取られた遠心力に比例して当該カーブの外側で車両Vのプ ラットホームを持ち上げる量が決定され、その結果、上記車両に負荷された遠心 力効果は該車両の変位量と均合わされ、該遠心力効果が放物線上を走行する車両 に作用するものと非常に近似したものとする一方、上記外側でのホイールRの傾 斜度を決定して、これらのホイールのタイヤに“オートバイ効果”を付与するこ とにより上記車両が当該カーブの外側に横滑りする傾向をさらに低減し; −上記車両Vがカーブから脱出し、上記釣合い重りが遠心圧力を受けないときに は、上述したように作動していた上記押さえ4の復元ばね5は該押さえ4を、休 止位置に復帰させ、該ばね5と接続されたセンサー6が上記制御モジール11に 、上記車両にかかる遠心圧力がなくなったことに関する信号を送り、該制御モジ ュール11は上記ポンプ8により、上記ショックアブサーバA及び上記可動ピス ト ン7を介して上記膨張流体の送出を上記タンク9に帰還させるとともにそれまで 使用されていた上記流体バルブ10を閉じる。 次いで、上記車両Vの水平位置及び上記両ホイールの垂直位置を決定し、該車 両Vは直線道路を走行する状態とされる。 更に、既に知られている機械的サスペンションは、1つのショックアブサーバ 類の範囲の作用のため振動するフォークを構成し、もし本発明の装置を適用すれ ば、上記範囲を広げることにより、水平ピストンの作動を追従させてカーブ上の ホーイルと対向するホイールの傾きが決定されるという事実を考慮すると、本発 明はさらに可能であれば、水力学的又は空気システムと接続されるとともに車両 本体と上記フォークとの連結点に2つ以上のピストン(又はもしサスペンション が単一軸を構成するのであれば、単一のピストン)を設け、当該サスペンション を道路と平行になるまで降下させ、それと同時に上記水平ピストンによって上記 ホイールを所定量傾斜させて該ホイールの垂直位置を保持するようにしてもよい 。DETAILED DESCRIPTION OF THE INVENTION Automatic device for reducing centrifugal force acting on curved vehicles The present invention reduces the effect of centrifugal force on cornering, The present invention relates to an automatic device provided with an electrohydraulic or electropneumatic drive mechanism for limiting the pressure. In motorcycle racing, etc., the centrifugal force applied to the tire friction area The driver leans inside the curve to avoid a considerable amount of It is known that the side slip is eliminated by inclining. An object of the present invention is to divert the above-mentioned effective operating conditions to a vehicle. Always fixed the wheel guides to the frame, but solved the above problem For this reason, both wheels are inclined in two ways according to the direction of the curve. Things. The object mentioned above is achieved by the device according to the invention, which device is adapted to the curve in question. Lift the vehicle platform out of the way and tilt the axes of both wheels appropriately. Meanwhile, the trajectory correction is determined so that the vehicle is on a parabola. The advantages of the device according to the invention are as follows: at the same speed on the curve Higher safety and / or faster in the stadium The ability to face each curve at speed. Hereinafter, the present invention will be described in detail with reference to the accompanying drawings showing embodiments. FIG. 1 shows the centrifugal force installed on the rear of the vehicle V and acting on the cornering vehicle. 4 shows an automatic device for reducing the effect. FIG. 2 shows the operation of the device when the vehicle turns left. FIG. 3 is a schematic block diagram showing the principle of operation of the device according to the present invention. The accompanying drawings show an autonomous vehicle for reducing the effect of centrifugal force on a vehicle traveling on a curve. It shows the motor and consists mainly of the following components: A spherical counterweight 3 and two restoring springs which are movable along a horizontal axis. 5 and a pressure sensor 6 is connected to each end. A centrifugal tracer 1 constituted by a cylinder body 2; A plurality of moving pistons 7 which determine the inclination of the wheel axis R; -The fluid (liquid or gas) contained in the tank 9 to the hydraulic shock absorber A; To determine the amount of lifting of the vehicle platform and For inclining the wheel R, which is introduced into the wheel 7 to determine the degree of inclination of the wheels R. Step 8; -Incorporated in the electronic central processing unit C, the tracer 1, the pump 8 and the hydraulic pressure control; It can be managed based on the signal received by the node valve 10, and A control module 11 for controlling the expansion fluid in the absorber A and the piston 7; In the following, the operation of the device according to the invention will be described in relation to the above components: -At the moment when the vehicle V runs on the curve, the centrifugal force A spherical counterweight 3 accommodated in the body 2 is provided outside the curved track of the vehicle. Proportional to the centrifugal force induced in the vehicle by contacting the retainer 4 Pressure applied to the vehicle; A sensor connected to a pressurized pressure by the counterweight 3 6 and the information on the pressure is contained in the electronic central processor C. Transmitted to the control module 11, and the control module 11 In response, the pump 8 and an appropriate hydraulic valve 10 are operated, and the The held inflation fluid is sent to the hydraulic shock absorber A, and the vehicle V is bent. Sent to the movable piston 7 located outside the curve to be sought; The amount of expansion and contraction of the shock absorber due to the fluid introduced into the shock absorber A And the vehicle V outside the curve in proportion to the centrifugal force read subsequently. The amount to lift the platform is determined, and as a result, the centrifugal load applied to the vehicle The force effect is balanced with the displacement of the vehicle, and the centrifugal effect is a vehicle traveling on a parabola. , While the inclination of the wheel R on the outside is Determine the slope to add a “motorcycle effect” to the tires of these wheels. And thereby further reduce the tendency of said vehicle to skid outside said curve; When the vehicle V escapes the curve and the counterweight is not subjected to centrifugal pressure The restoring spring 5 of the presser 4, which has been operated as described above, rests the presser 4 The control module 11 is returned to the stop position, and the sensor 6 connected to the spring 5 is connected to the control module 11. Sends a signal indicating that the centrifugal pressure applied to the vehicle has disappeared, The table 11 is driven by the pump 8 by the shock absorber A and the movable piston. G The delivery of the inflation fluid is returned to the tank 9 through the The used fluid valve 10 is closed. Next, the horizontal position of the vehicle V and the vertical position of both wheels are determined. Both Vs are set to run on a straight road. In addition, already known mechanical suspensions have one shock absorber A fork that vibrates for a range of functions, and if the device of the invention is applied For example, by expanding the above range, the operation of the horizontal Considering the fact that the inclination of the wheel opposite to the wheel is determined, Lighting should be connected to hydraulic or pneumatic systems and to vehicles if possible. At the connection point between the body and the fork, two or more pistons (or suspensions If a single shaft is configured, a single piston is provided and the suspension is Down until it is parallel to the road, and at the same time The vertical position of the wheel may be maintained by inclining the wheel by a predetermined amount. .
Claims (1)
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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IT98RM000242A IT1299420B1 (en) | 1998-04-17 | 1998-04-17 | AUTOMATIC DEVICE FOR REDUCING THE EFFECTS OF CENTRIFUGAL FORCE ON VEHICLES THROUGH CORNERS |
PCT/IT1998/000217 WO1999054186A1 (en) | 1998-04-17 | 1998-07-29 | An automatic device for the reduction of the centrifugal force effects onto cornering vehicles |
IT98A000242 | 1998-12-24 |
Publications (1)
Publication Number | Publication Date |
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JP2002505638A true JP2002505638A (en) | 2002-02-19 |
Family
ID=11405819
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP55271499A Pending JP2002505638A (en) | 1998-04-17 | 1998-07-29 | Automatic device for reducing centrifugal force acting on curved vehicles |
Country Status (3)
Country | Link |
---|---|
JP (1) | JP2002505638A (en) |
IT (1) | IT1299420B1 (en) |
WO (1) | WO1999054186A1 (en) |
Cited By (2)
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KR101306282B1 (en) | 2011-11-16 | 2013-09-09 | 한국철도기술연구원 | automatic tilting apparatus for ecentricity monorail car |
JP2015512821A (en) * | 2012-02-27 | 2015-04-30 | ビクター ガノ,ジョン | Integrated system of independent variable multi-wheel steering and road contact geometry |
Families Citing this family (16)
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DE10330894A1 (en) * | 2003-07-09 | 2005-02-10 | Daimlerchrysler Ag | Steerable vehicle and method for influencing the direction of travel |
ATE377517T1 (en) | 2004-02-13 | 2007-11-15 | Friedrich Geiser | MULTI-LANE CURVING VEHICLE AND METHOD FOR TILTING A VEHICLE |
DE102006055293A1 (en) * | 2006-11-23 | 2008-05-29 | GM Global Technology Operations, Inc., Detroit | Bearing arrangement for independent suspension with adjustment mechanism for active lane adjustment |
DE102007034840A1 (en) | 2007-07-26 | 2009-01-29 | Dr. Ing. H.C. F. Porsche Aktiengesellschaft | Suspension system for a motor vehicle and method for driving dynamics control |
DE102009025227A1 (en) | 2009-06-17 | 2010-12-30 | Audi Ag | Suspension for the rear wheels of motor vehicles |
EP2855176A1 (en) | 2012-06-04 | 2015-04-08 | John Victor Gano | Multi-axis caster angle control system of an extendable wheel assembly |
DE102014201668B4 (en) | 2013-03-07 | 2021-09-02 | Ford Global Technologies, Llc | Laterally tiltable, multi-lane vehicle |
DE102014201127B4 (en) | 2013-03-07 | 2022-02-03 | Ford Global Technologies, Llc | Side-tilting, multi-track vehicle |
DE102014201632B4 (en) | 2013-03-07 | 2021-09-02 | Ford Global Technologies, Llc | Laterally tiltable, multi-lane vehicle |
DE102014201630B4 (en) | 2013-03-07 | 2021-09-02 | Ford Global Technologies, Llc | Laterally tiltable, multi-lane vehicle |
DE102014201670A1 (en) | 2013-03-07 | 2014-09-11 | Ford Global Technologies, Llc | Sideways inclinable, multi-lane vehicle |
DE102014217246B3 (en) | 2014-08-29 | 2015-12-24 | Ford Global Technologies, Llc | Stabilization arrangement for a tilting chassis of a vehicle |
DE102014217386A1 (en) | 2014-09-01 | 2016-03-03 | Ford Global Technologies, Llc | Method for operating a tilting chassis and active tilting suspension for a rail-bound vehicle |
US10076939B2 (en) | 2014-11-26 | 2018-09-18 | Ford Global Technologies, Llc | Suspension systems for laterally tiltable multitrack vehicles |
US10023019B2 (en) | 2015-02-24 | 2018-07-17 | Ford Global Technologies, Llc | Rear suspension systems with rotary devices for laterally tiltable multitrack vehicles |
US9925843B2 (en) | 2015-02-24 | 2018-03-27 | Ford Global Technologies, Llc | Rear suspension systems for laterally tiltable multitrack vehicles |
Family Cites Families (5)
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JPS6015213A (en) * | 1983-07-06 | 1985-01-25 | Nissan Motor Co Ltd | Suspender |
US4700972A (en) * | 1985-06-20 | 1987-10-20 | Young Colin G | Computerized, central hydraulic, electronic variable suspension |
US4796720A (en) * | 1987-09-21 | 1989-01-10 | Bauer John K | Four-wheel steering, leveling and banking for vehicles |
FR2641503B1 (en) * | 1989-01-09 | 1991-05-03 | Peugeot | VARIABLE BODY SUSPENSION FOR MOTOR VEHICLE |
US5662356A (en) * | 1995-04-26 | 1997-09-02 | Tlc Suspension | Roll correction system with countersteer compensation |
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1998
- 1998-04-17 IT IT98RM000242A patent/IT1299420B1/en active IP Right Grant
- 1998-07-29 WO PCT/IT1998/000217 patent/WO1999054186A1/en active Application Filing
- 1998-07-29 JP JP55271499A patent/JP2002505638A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR101306282B1 (en) | 2011-11-16 | 2013-09-09 | 한국철도기술연구원 | automatic tilting apparatus for ecentricity monorail car |
JP2015512821A (en) * | 2012-02-27 | 2015-04-30 | ビクター ガノ,ジョン | Integrated system of independent variable multi-wheel steering and road contact geometry |
Also Published As
Publication number | Publication date |
---|---|
IT1299420B1 (en) | 2000-03-16 |
ITRM980242A1 (en) | 1999-10-17 |
ITRM980242A0 (en) | 1998-04-17 |
WO1999054186A1 (en) | 1999-10-28 |
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